arXiv · 2610.05881
Giant Conductance Enhancement in Graphene Nanoscrolls via Interlayer-Coupled States
Abstract
Graphene nanoscrolls form a unique radial superlattice whose geometry enables transport behaviors distinct from their flat counterparts. We theoretically demonstrate that rolling a graphene nanoribbon into a few-turn nanoscroll (1.0-1.2 turns) triggers a giant enhancement in longitudinal conductance by an order of magnitude (nearly twentyfold). We show that this effect stems from interlayer hopping between open boundaries, which not only transforms localized edge states into one-dimensional-like conducting channels and also induces a significant Fermi energy shift. Our results reveal an inverse scaling of conductance with turn number, establishing GNSs as a platform for geometry-driven quantum transport and offering a tunable approach to engineering nanoarchitectural electronic states.
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Jia-Cheng Li, Ying-Je Lee, Yu An Cheng, Yu-Hsiang Fu, Xuan-Fu Huang, Yu-Jie Zhong, Ion Cosma Fulga, Carmine Ortix, Ching-Hao Chang. 2026-10-05. Giant Conductance Enhancement in Graphene Nanoscrolls via Interlayer-Coupled States. https://arxiv.org/abs/2610.05881
Cite the original work for its findings. Save a collection to share your selection of sources.